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MiR-26a promotes apoptosis of porcine granulosa cells by targeting the 3β-hydroxysteroid-Δ24-reductase gene
Xiaodong Zhang, Qiangqiang Tao, Jinnan Shang, Yiliang Xu, Liang Zhang, Yingchun Ma, Weihua Zhu, Min Yang, Yueyun Ding, Zongjun Yin
Asian-Australas J Anim Sci. 2020;33(4):547-555.   Published online July 1, 2019
DOI: https://doi.org/10.5713/ajas.19.0173

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MiR-26a promotes apoptosis of porcine granulosa cells by targeting the 3β-hydroxysteroid-Δ24-reductase gene
Asian-Australasian Journal of Animal Sciences. 2020;33(4):547-555   Crossref logo
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miR‐26a inhibits proliferation and promotes apoptosis in porcine immature Sertoli cells by targeting the PAK2 gene
Reproduction in Domestic Animals. 2018;53(6):1375-1385   Crossref logo
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HISTOCHEMICAL DEMONSTRATION OF ∆5-3β-HYDROXYSTEROID DEHYDROGENASE ACTIVITY IN CULTIVATED GRANULOSA CELLS OF THE PORCINE OVARY
Acta Pathologica Microbiologica Scandinavica. 1966;68(3):461-462   Crossref logo
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Hepatitis C virus promotes expression of the 3β-hydroxysterol δ24-reductase through Sp1
Journal of Medical Virology. 2012;84(5):733-746   Crossref logo
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Alterations in 3β-hydroxysteroid dehydrogenase (3β-HSD) mRNA accumulation induced by β-adrenergic stimulation in cultured porcine granulosa cells
General Pharmacology: The Vascular System. 1993;24(3):715-720   Crossref logo
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MiR-214-3p Promotes Proliferation and Inhibits Estradiol Synthesis In Porcine Granulosa Cells
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3β-Hydroxysteroid-Δ24 Reductase (DHCR24) Protects Pancreatic β Cells from Endoplasmic Reticulum Stress-Induced Apoptosis by Scavenging Excessive Intracellular Reactive Oxygen Species
Journal of Diabetes Research. 2020;2020:1-11   Crossref logo
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miR-26b Promotes Granulosa Cell Apoptosis by Targeting ATM during Follicular Atresia in Porcine Ovary
PLoS ONE. 2012;7(6):e38640   Crossref logo
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miR‐362 knock‐down promotes proliferation and inhibits apoptosis in porcine immature Sertoli cells by targeting the RMI1 gene
Reproduction in Domestic Animals. 2020;55(5):547-558   Crossref logo
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3β-Hydroxysterol Δ24-Reductase on the Surface of Hepatitis C Virus-Related Hepatocellular Carcinoma Cells Can Be a Target for Molecular Targeting Therapy
PLOS ONE. 2015;10(4):e0124197   Crossref logo
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